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利用酰胺连接型双子表面活性剂的缓蚀和抗菌活性潜力:从分子设计到功能性能

Harnessing the Potential of Amide-Linked Gemini Surfactants for Corrosion Inhibition and Antimicrobial Activity: From Molecular Design to Functional Performance.

作者信息

Dahal Homen, Paswan Akash Mukhraj, Dey Joykrishna, Raj C Retna

机构信息

Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur 721302, India.

出版信息

Langmuir. 2025 Mar 4;41(8):5455-5466. doi: 10.1021/acs.langmuir.4c05064. Epub 2025 Feb 20.

DOI:10.1021/acs.langmuir.4c05064
PMID:39976535
Abstract

Gemini surfactants, also called Gemini, especially those with quaternary ammonium head groups, are recognized for their distinctive aggregation behavior and enhanced structure-activity relationships. The unique dual-head and dual-tail structure of Gemini grants them superior surface activity, allowing them to effectively lower surface and interfacial tension. To investigate the self-assembly behavior and surface-active properties that make them suitable as anticorrosion and antimicrobial agents, a series of cationic Gemini featuring amide bonds and varying alkyl chain lengths were synthesized. Surface activity and self-assembly characteristics of these cationic Gemini were analyzed using methods such as surface tension, electrical conductivity, fluorescence, and isothermal titration calorimetry. The findings revealed that these Gemini possess enhanced surface-active and self-assembly properties in comparison to traditional single-tail, monoheaded surfactants. Thermodynamic studies confirmed that these Gemini self-assemble spontaneously in water above a relatively low threshold concentration, with the self-assembly process becoming less favorable as the alkyl chain length decreased. The length of the chains also affected the size and shape of the aggregates formed. These Gemini have been shown to exhibit remarkable anticorrosion properties on steel surface. The performance of these compounds as corrosion inhibitors showed a clear dependence on chain length, with the shortest chain length Gemini providing the highest inhibition efficiency. These Gemini have also exhibited pronounced antibacterial activities against (DH5alpha) and bacteria.

摘要

双子表面活性剂,也称为Gemini表面活性剂,尤其是那些带有季铵头基的双子表面活性剂,因其独特的聚集行为和增强的构效关系而受到认可。Gemini表面活性剂独特的双头和双尾结构赋予它们卓越的表面活性,使它们能够有效降低表面张力和界面张力。为了研究使其适合用作防腐剂和抗菌剂的自组装行为和表面活性性质,合成了一系列具有酰胺键且烷基链长度不同的阳离子Gemini表面活性剂。使用表面张力、电导率、荧光和等温滴定量热法等方法分析了这些阳离子Gemini表面活性剂的表面活性和自组装特性。研究结果表明,与传统的单尾、单头表面活性剂相比,这些Gemini表面活性剂具有增强的表面活性和自组装性能。热力学研究证实,这些Gemini表面活性剂在相对较低的阈值浓度以上的水中自发自组装,随着烷基链长度的减小,自组装过程变得不太有利。链的长度也影响所形成聚集体的大小和形状。这些Gemini表面活性剂已被证明在钢表面具有显著的防腐性能。这些化合物作为缓蚀剂的性能明显依赖于链长度,链长度最短的Gemini表面活性剂具有最高的缓蚀效率。这些Gemini表面活性剂还对(DH5alpha)和细菌表现出明显的抗菌活性。

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